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Open Access Issue
Effect of signal power enhancement on the performance of GNSS null-steering anti-jamming receiver
Journal of National University of Defense Technology 2023, 45(5): 72-77
Published: 28 October 2023
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Due to the low transmitting power and large transmission loss, the satellite signal reaching the GNSS receiver is extremely weak, and easy to be interfered. In order to deal with the threat of electromagnetic interference, taking measures at both the system and user level would be a good choice. A model for analyzing the interference suppression capability of anti-jamming receiver with null-steering antenna was established, and the improvement effect of signal power enhancement on the interference suppression performance was quantitatively analyzed. Results show that, the interference mitigation capability of the receiver can be improved by 3~4 dB per 10 dB signal power enhancement. However, from the perspective of improving the receiver′s reception performance (carrier to noise ratio, ranging and positioning accuracy, etc.) under non limiting conditions, when the signal power is increased by 15~20 dB, the reception performance is optimal. The research result can guide the optimization of the signal power enhancement and anti-jamming design of receivers.

Open Access Issue
Low-complexity fast frequency-sweep interference mitigation method for satellite navigation receivers
Journal of National University of Defense Technology 2023, 45(5): 105-110
Published: 28 October 2023
Abstract PDF (3.7 MB) Collect
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A low-complexity method based on pulse blanking for fast frequency-sweep interference mitigation in satellite navigation receivers was proposed. Different from traditional methods based on time-frequency analysis, this method converted the continuous wave interference into pulse interference through a low-pass filter, and then pulse detection and blanking were used to mitigate the interference. The interference was blanked as a pulse when it located in the pass-band of the low-pass filter. Otherwise, it was suppressed as an out-band interference when it located in the stop-band of the low-pass filter. Theoretical analysis and experimental results show that the computation complexity of this method is reduced by an order of magnitude compared with that of traditional method, and it can achieve similar interference suppression performance.

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